>>Signaling Pathways>> PI3K/Akt/mTOR Signaling>> mTOR>>Rapalink-1

Rapalink-1

Catalog No.GC11607

3세대 2가 mTOR 억제제인 RapaLink-1은 불활성 화학 링커에 의해 라파마이신과 MLN0128을 결합합니다. RapaLink-1은 라파마이신 또는 mTOR 키나제 억제제(TORKi)보다 더 나은 효능을 보여 암 유래 mTOR의 돌연변이를 활성화하는 것을 강력하게 차단합니다. RapaLink-1은 혈액뇌장벽을 통과할 수 있습니다. FKBP12에 대한 RapaLink-1 결합은 mTORC1을 표적화하고 지속적으로 억제합니다. RapaLink-1은 자가포식을 개선하여 항인지질 증후군에서 항혈전 역할을 합니다. 항암 활성.

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Rapalink-1 Chemical Structure

Cas No.: 1887095-82-0

Size 가격 재고 수량
5mg
US$643.00
재고 있음
25mg
US$1,838.00
재고 있음

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Sample solution is provided at 25 µL, 10mM.

Description Chemical Properties Product Documents Related Products

RapaLink-1 is the third-generation mTOR inhibitor exploiting the unique juxtaposition of two drug (first- and second-generation mTOR kinase inhibitors) –binding pockets to create a bivalent interaction that allows inhibition of the mutants which has resistance to the previous TORKi (mTOR kinase inhibitors).

The PIK3CA–AKT–mTOR pathway is one of the most commonly activated pathways in human cancers, which has led to the development of small-molecule inhibitors that target various nodes in the pathway. Two generation of mTOR inhibitor had been developed.

Rapalink-1 is more potent than first- and second- generation mTOR inhibitors. RapaLink-1 could more potently reduce levels of both p-4EBP1 and cell proliferation. Researches compared rapamycin, RapaLink-1, and MLN0128 in LN229 and U87MG. Both growth inhibition and arrest in G0/G1 were more potent in response to RapaLink-1, compared with rapamycin or MLN0128. RapaLink-1 shows potent anti-tumor efficacy in vivo. RapaLink-1 led to initial regression and subsequent stabilization of tumor size in a xenograft model, while tumors treated with vehicle, rapamycin, or MLN0128 grew steadily.

RapaLink-1 could durably block mTORC1. RapaLink-1 is associated with FKBP12, an abundant mTOR-interacting protein, enabling accumulation of RapaLink-1. RapaLink-1 showed better efficacy than rapamycin or TORKi, potently blocking cancer-derived, activating mutants of mTOR.

References:
[1].  Fan Q1, Aksoy O1, Wong RA1, et al, A Kinase Inhibitor Targeted to mTORC1 Drives Regression in Glioblastoma. Cancer Cell. 2017 Mar 13;31(3):424-435. doi: 10.1016/j.ccell.2017.01.014.
[2] Rodrik-Outmezguine VS1, Okaniwa M2, Yao Z1, et al, Overcoming mTOR resistance mutations with a new-generation mTOR inhibitor.  Nature. 2016 Jun 9;534(7606):272-6. doi: 10.1038/nature17963. Epub 2016 May 18.

리뷰

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Average Rating: 5 ★★★★★ (Based on Reviews and 5 reference(s) in Google Scholar.)

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